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Impacts of Artificial Underground Reservoir on Groundwater Environment in the Reservoir and Downstream Area

机译:人工地下水库对水库及下游地区地下水环境的影响

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摘要

Artificial underground reservoirs have changed the hydrological cycle from its natural condition. This modification may trigger a series of negative environmental effects both at the local and regional levels. This study investigated the impact of the Wanghe artificial underground reservoir on groundwater flow and quality in the reservoir and its downstream area. Wanghe is a typical artificial underground reservoir scheme in China, which assumes the dual function of fresh-water preservation and control of seawater intrusion. The groundwater flow pattern has changed after the reservoir construction, and the water level in the reservoir rose rapidly. Evaluation of long-term groundwater level fluctuation suggested that the reservoir deprived the downstream aquifer of the runoff, which it received under the natural flow regime. A preliminary isotopic evaluation using 3H was developed to understand the groundwater flow and renewal rates in the study area. The uniform distribution of tritium levels in the reservoir indicated that the stored water was well-mixed in both horizontal and vertical directions. The intervention on groundwater circulation also made differences in groundwater renewal rates between stored and downstream water. Field investigations on groundwater nitrogen pollution showed that the construction of the artificial underground reservoir resulted in nitrate accumulation in the stored water. Agriculturally derived nitrate was the largest contributor, and NO3 concentration varied considerably over time due to fertilization and irrigation activities, rainfall, and denitrification. NO3-N distributed homogeneously in the reservoir, which was attributed to the construction of the subsurface dam, land use pattern and artificial groundwater flow.
机译:人工地下水库从自然条件改变了水文循环。这种修改可能会在本地和区域级别引发一系列负面环境影响。本研究调查了望河人工地下水库对水库及其下游地区地下水流量和水质的影响。望河是中国典型的人工地下水库计划,承担着淡水保存和控制海水入侵的双重功能。水库建设后,地下水流型发生了变化,水库水位迅速上升。对长期地下水位波动的评估表明,该水库剥夺了下游蓄水层的径流,而该径流是在自然流量状态下获得的。利用 3 H进行了初步同位素评估,以了解研究区域的地下水流量和更新速率。 reservoir在水库中的分布均匀,表明所储存的水在水平和垂直方向上都充分混合。对地下水循环的干预也使储水和下游水的地下水更新率有所不同。地下水氮污染的现场调查表明,人工地下水库的建设导致了硝酸盐在蓄水中的积累。农业来源的硝酸盐是最大的贡献者,并且 <由于施肥和灌溉活动,降雨和降雨,mi> NO 3 - 的浓度随时间变化很大。反硝化。 NO 3 -N在水库中均匀分布,这归因于地下大坝的建设,土地利用方式和人工地下水流量。

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